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首页> 外文期刊>Soil Science and Plant Nutrition >Effects of root-zone temperature and N, P, and K supplies on nutrient uptake of cucumber (Cucumis sativus L.) seedlings in hydroponics.
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Effects of root-zone temperature and N, P, and K supplies on nutrient uptake of cucumber (Cucumis sativus L.) seedlings in hydroponics.

机译:根区温度和氮,磷和钾供应对水培法黄瓜(Cucumis sativus L.)幼苗养分吸收的影响。

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The nutrient uptake and allocation of cucumber (Cucumis sativus L.) seedlings at different root-zone temperatures (RZT) and different concentrations of nitrogen (N), phosphorus (P), and potassium (K) nutrients were examined. Plants were grown in a nutrient solution for 30 d at two root-zone temperatures (a diurnally fluctuating ambient 10 degrees C-RZT and a constant 20 degrees C-RZT) with the aerial parts of the plants maintained at ambient temperature (10 degrees C-30 degrees C). Based on a Hoagland nutrient solution, seven N, P, and K nutrient concentrations were supplied to the plants at each RZT. Results showed that total plant and shoot dry weights under each nutrient treatment were significantly lower at low root-zone temperature (10 degrees C-RZT) than at elevated root-zone temperature (20 degrees C-RZT). But higher root dry weights were obtained at 10 degrees C-RZT than those at 20 degrees C-RZT. Total plant dry weights at both 10 degrees C-RZT and 20 degrees C-RZT were increased with increased solution N concentration, but showed different responses under P and K treatments. All estimated nutrient concentrations (N, P, and K) and uptake by the plant were obviously influenced by RZT. Low root temperature (10 degrees C-RZT) caused a remarkable reduction in total N, P, and K uptake of shoots in all nutrient treatments, and more nutrients were accumulated in roots at 10 degrees C-RZT than those at 20 degrees C-RZT. N, P, and K uptakes and distribution ratios in shoots were both improved at elevated root-zone temperature (20 degrees C-RZT). N supplies were favorable to P and K uptake at both 10 degrees C-RZT and 20 degrees C-RZT, with no significantly positive correlation between N and P, or N and K uptake. In conclusion, higher RZT was more beneficial to increase of plant biomass and mineral nutrient absorption than was increase of nutrient concentration. Among the three element nutrients, increasing N nutrient concentration in solution promoted better tolerance to low RZT in cucumber seedlings than increasing P and K. In addition, appropriately decreased P concentration favors plant growth.
机译:研究了黄瓜(Cucumis sativus L.)幼苗在不同根区温度(RZT)和不同浓度氮(N),磷(P)和钾(K)养分下的养分吸收和分配。使植物在营养液中在两个根区温度下生长30 d(环境温度每天在10 C-RZT上每天波动,在20 C-RZT上恒定),并使植物的空中部分保持在环境温度(10℃)下-30摄氏度)。基于Hoagland营养液,在每个RZT处向植物提供了7种N,P和K养分浓度。结果表明,在低根区温度(10摄氏度)下,每种养分处理的总植株和苗干重明显低于在高根区温度(20摄氏度)下。但是在10摄氏度时比20摄氏度时获得更高的根部干重。随着溶液氮浓度的增加,在10 C-RZT和20 C-RZT下的植物总干重均增加,但在P和K处理下表现出不同的响应。 RZT明显影响所有估计的养分浓度(N,P和K)和植物吸收。较低的根部温度(10摄氏度-RZT)导致在所有营养处理中芽的总N,P和K吸收显着降低,并且10摄氏度-RZT的根部比20摄氏度-C的根部积累更多的养分RZT。在较高的根区温度(20摄氏度-RZT)下,芽中氮,磷和钾的吸收及分配比均得到改善。在10摄氏度和20摄氏度时,氮素供应有利于磷和钾的吸收,氮和磷,氮和钾的吸收之间无显着正相关。总之,较高的RZT比增加养分浓度更有利于增加植物生物量和矿质养分吸收。在这三种元素养分中,溶液中氮养分含量的增加比黄瓜中磷和钾的增加对黄瓜低RZT的耐受性更好。此外,适当降低磷的含量有利于植物生长。

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